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Trzeciak, J.

Publications and source records attributed to Trzeciak, J..

2 recordsLinked to original sources

Social Context Suppresses Food Anticipatory Activity and Associated Thermoregulation in Mice

Food anticipatory activity (FAA) is a robust behavioral output of food-entrained circadian rhythms, characterized by increased locomotor activity prior to scheduled feeding. Despite the social nature of rodents, FAA is almost exclusively studied in singly housed animals, leaving the influence of social context largely unexplored. Here, we used implanted wireless devices to measure individual locomotor activity and subcutaneous body temperature in group-housed mice and compared these measures to singly housed controls. Social housing significantly suppressed FAA in both male and female mice, with the effect being more pronounced and sustained in males. In parallel, preprandial increases in body temperature were markedly attenuated in group-housed animals. These findings demonstrate that FAA is a flexible, state-dependent behavior that reflects both circadian timing and energetic demand. Together, these results identify social context as an important and underappreciated determinant of food-entrained circadian biology.

neuroscience↗

Genetic Identification of Dopamine Neurons Required for Circadian Food Anticipatory Activity in Mice

Anticipating daily food availability is a conserved circadian behavior that persists even in animals lacking the suprachiasmatic nucleus, yet its neural substrates remain poorly defined. Previous studies implicated dopamine signaling in food anticipatory activity (FAA) but lacked the resolution to identify the responsible neuronal population. Here, we conditionally deleted tyrosine hydroxylase (Th) from molecularly defined dopamine neuron populations in mice. Broad deletion of Th in dopamine transporter-expressing neurons nearly abolished FAA, whereas restoration of Th in substantia nigra dopamine neurons rescued anticipatory locomotion. Surprisingly, deletion of Th from several large dopamine neuron populations had little effect on FAA. In contrast, deletion using Calb1Cre, targeting only [~]25% of substantia nigra dopamine neurons, produced a profound FAA deficit. Notably, these mice exhibited a profound loss of anticipatory locomotion while retaining substantial anticipatory food-seeking behavior. These findings identify a small Calbindin1+ dopamine population required for anticipatory locomotion and demonstrate that distinct behavioral components of food anticipation can be genetically dissociated.

neuroscience↗